• 제목/요약/키워드: Peak Runoff Reduction

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LID 개념 적용으로 인한 유출 감소 특성 가능성 분석 및 바이모달 트램 전용노선에서의 적용성 검토 (Analysis of Runoff Reduction Characteristics with LID Adaptation and LID Applicability at Bimodal Tram Route)

  • 박준호;박영곤;윤희택;유용구;김종건;박윤식;임경재
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 춘계학술대회 논문집
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    • pp.147-150
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    • 2008
  • Changes in land uses at urbanizing areas are causing flooding, increase in NPS pollutants. Thus, Low Impact Development (LID) concept is now being employed in urban planning for sustainable development. Compared with the conventional BMPs, the LID is a new concept in urban planning to minimize the impacts of urbanization for site-specific LID IMPs. The objective of this study is to analyze the efficiency of LID adoption in study watershed in peak rate runoff and runoff volume reduction perspectives. The analysis revealed that the peak rate runoff and runoff volume decreased significantly with the LID adoption. This indicates that the Bimodal tram route with grass installed at the center of the road will contribute reduction in surface runoff and peak rate runoff, and also in NPS pollutant generation from the Bimodal tram route.

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레인가든이 지하유출 및 첨두유량 감소에 미치는 효과 (Effects of Rain Garden on Reduction of Subsurface Runoff and Peak Flow)

  • 김창수;성기준
    • 한국환경복원기술학회지
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    • 제14권5호
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    • pp.69-79
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    • 2011
  • This study assessed the subsurface runoff and peak flow reduction in rain gardens. The results showed that the highest water retention was found in rain garden mesocosms in which Rhododendron lateritium and Zoysia japonica were planted, followed by mesocosms in which either R. lateritium or Z. japonica was planted, and the lowest water retention rate was found in non-vegetated control treatment mesocosms(${\alpha}$ < 0.05). Although higher rainfall intensity caused a decrease of peak flow reduction in both vegetated and non-vegetated treatments, peak flow reduction was the greatest in mesocosms with mixed plants. A rain garden can be an effective tool for environment-friendly stormwater management and improving ecological functions in urban areas. Depending on the purpose such as delaying runoff or increasing infiltration, various plant types should be considered for rain garden designing.

우수저류시설의 배치방법에 따른 유출 및 침수피해 저감효과 분석 (Analyzing the Reduction of Runoff and Flood by Arrangements of Stormwater Storage Facilities)

  • 박창열;신상영;손은정
    • 한국물환경학회지
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    • 제29권1호
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    • pp.45-54
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    • 2013
  • This study analyzes the reduction effects of runoff and flood damage through different arrangements of stormwater storage facilities. Three scenarios based on the spatial allocation of storage capacity are used: concentrated, decentralized and combinative. The characteristics of runoff and flood damage by scenario are compared. The XP-SWMM model is used for runoff simulation by the probable rainfall of return period. The result shows that the concentrated arrangement of storage facilities is most effective to reduce the amount of peak flow and to delay the time of peak flow. Yet, while the concentrated arrangement is most effective to reduce the inundation damage, it is not effective to reduce runoff volume. The decentralized arrangement is most effective to reduce runoff volume. The combinative arrangement is effective not only the runoff reduction but also the reduction of flood damage. The result indicates that the flood mitigation strategies against heavy rainfall need to consider decentralized on-site arrangement for the reduction of runoff volume along with concentrated off-site arrangement of storage facilities.

저류형 옥상녹화의 우수유출저감에 대한 연구 (Runoff Reduction Effect of Rainwater Retentive Green roof)

  • 백소영;김현우;김미경;한무영
    • KIEAE Journal
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    • 제16권1호
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    • pp.67-71
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    • 2016
  • Purpose: There is a growing interest in rainwater runoff reduction effect of green roof, as flooding caused by increasing impervious surface is becoming more and more frequent in urban areas. This study was conducted to prove runoff reduction and runoff delay effect of the retentive green roof and to investigate its influencing factors to the rainfall events that occurred in the summer of 2013. Method: The experiment intended to monitor the runoff quantity of the retentive green roof($140m^2$) and normal roof($100m^2$) in #35 building in Seoul National University, Seoul, Korea for 75 days in 2013. Result: On analysis of 9 rainfall events, it showed that the retentive green roof has 24.8~100% of runoff reduction ratio, 21.2~100% of peak flow reduction ratio, 0.5~3.75 hours of peak delay, and $1.8{\sim}7.2m^3$ of retaining capacity in an area of $140m^2$. It shows different results depending on rainfall and antecedent dry days. The results show that runoff reduction effect is effective when the rainfall is less than 50 mm and antecedent dry day is longer than five days on average. By installing retentive green roofs on buildings, it can help mitigate urban floods and rehabilitate urban water cycle.

유출저감을 위한 유역내 침투시설의 적용 (An Application of Infiltration Facilities for Reducing the Runoff in the Basin)

  • 이재준;설지수
    • 한국방재학회 논문집
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    • 제11권3호
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    • pp.133-141
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    • 2011
  • 유역의 도시화는 유출총량과 첨두유량의 증가와 도달시간이 감소시키며, 홍수피해의 위험성을 더욱 크게 만든다. 침투시설은 도시유역의 유출총량과 첨두유량을 감소시킬 수 있고, 그 종류에는 침투트렌치와 투수성 포장재 등이 있다. 본 연구에서는 침투시설 설치에 따른 우수유출저감효과를 알아보기 위하여 경북 구미시 옥계동의 $0.18km^2$와 공단동의 $0.67km^2$의 면적을 가진 도시유역을 대상으로 하여 각각의 유역특성을 분석하고, 유출총량 및 첨두유량의 저감량을 WinSLAMM 모형을 이용하여 분석하였다. 또한, 침투시설 설치에 따른 첨두유량저감효과를 분석하였고, 침투시설 면적비와 유출저감률과의 관계식을 도출하였다.

SWMM 분석을 통한 투수성 포장의 유출 저감 특성 평가 (Performance Evaluation of the Runoff Reduction with Permeable Pavements using the SWMM Model)

  • 임무광;류성우;박대근;이재훈;조윤호
    • 한국도로학회논문집
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    • 제17권4호
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    • pp.11-18
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    • 2015
  • PURPOSES: This study aims to evaluate the runoff reduction with permeable pavements using the SWMM analysis. METHODS: In this study, simulations were carried out using two different models, simple and complex, to evaluate the runoff reduction when an impermeable pavement is replaced with a permeable pavement. In the simple model, the target area for the analysis was grouped into four areas by the land use characteristics, using the statistical database. In the complex model, simulation was performed based on the data on the sewer and road network configuration of Yongsan-Gu Bogwang-Dong in Seoul, using the ArcGIS software. A scenario was created to investigate the hydro-performance of the permeable pavement based on the return period, runoff coefficient, and the area of permeable pavement that could be laid within one hour after rainfall. RESULTS : The simple modeling analysis results showed that, when an impervious pavement is replaced with a permeable pavement, the peak discharge reduced from $16.7m^3/s$ to $10.4m^3/s$. This represents a reduction of approximately 37.6%. The peak discharge from the whole basin showed a reduction of approximately 11.0%, and the quantity decreased from $52.9m^3/s$ to $47.2m^3/s$. The total flowoff reduced from $43,261m^3$ to $38,551m^3$, i.e., by approximately 10.9%. In the complex model, performed using the ArcGIS interpretation with fewer permeable pavements applicable, the return period and the runoff coefficient increased, and the total flowoff and peak discharge also increased. When the return period was set to 20 years, and a runoff coefficient of 0.05 was applied to all the roads, the total outflow reduced by $5195.7m^3$, and the ratio reduced to 11.7%. When the return period was increased from 20 years to 30 and 100 years, the total outflow reduction decreased from 11.7% to 8.0% and 5.1%, respectively. When a runoff coefficient of 0.5 was applied to all the roads under the return period of 20 years, the total outflow reduction was 10.8%; when the return period was increased to 30 and 100 years, the total outflow reduction decreased to 6.5% and 2.9%, respectively. However, unlike in the simple model, for all the cases in the complex model, the peak discharge reductions were less than 1%. CONCLUSIONS : Being one of the techniques for water circulation and runoff reduction, a high reduction for the small return period rainfall event of penetration was obtained by applying permeable pavements instead of impermeable pavement. With the SWMM analysis results, it was proved that changing to permeable pavement is one of the ways to effectively provide water circulation to various green infrastructure projects, and for stormwater management in urban watersheds.

RCP 기후변화 시나리오에 따른 우수 유출량 저감을 위한 저영향개발 시설의 적용 방안 (Application of LID to Reduce Storm Runoff according to the RCP Climate Change Scenarios)

  • 김민지;김지은;박경운;김태웅
    • 대한토목학회논문집
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    • 제42권3호
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    • pp.333-342
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    • 2022
  • 기후변화의 영향으로 집중호우가 증가하고 있으며, 이로 인한 침수피해가 매년 발생하고 있다. 본 연구는 저영향개발(LID) 시설의 우수 유출저감 효과를 분석하기 위하여, 용두빗물펌프장 유역을 대상으로, 미국 환경보호청(EPA)의 우수유출관리모형(SWMM)을 이용하여, 과거와 미래의 대표 강우사상에 대한 유출분석을 수행하였다. 그 결과 과거 강우사상과 비교하여 미래 대표 강우사상에 대한 침투량은 3.17 % 증가하였지만, 지표면 유출량 및 첨두유량은 각각 32.50 % 및 128.77 % 증가하였다. 이러한 지표면 유출량과 첨두유량의 증가를 감소시키기 위하여 투수성 포장, 옥상녹화 및 빗물정원을 선정하였다. 세 가지 LID 시설의 매개변수와 설치 면적 비율을 조정하여 LID 시설의 적용성을 평가하였다. 그 결과 첨두유량과 지표 유출량을 감소시키고 침투량과 저류량를 증가시키는 투수성 포장, 옥상 정원 그리고 빗물 정원의 적정 매개변수를 찾을 수 있었다. 또한 투수성 포장, 옥상녹화, 빗물정원의 적용 비율이 2:1:3일 때, 첨두유량 26.85 %, 침투량 12.10 %, 지표면 유출량 15.11 %, 저류량 509.47 %의 저감효과가 나타났다. 재현기간별 우수 유출저감 효과를 분석한 결과, 재현기간이 증가할수록 첨두유량과 지표면 유출량의 비중은 늘어나고 침투량과 저류량의 비중은 줄어드는 것으로 나타났다.

도시유역에서 침투시설의 우수유출저감효과 분석 (An Analysis of Runoff Reduction Effect of Infiltration Facilities in Urban Area)

  • 이재준;김호년;곽창재;이상원
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2007년도 정기총회 및 학술발표대회
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    • pp.628-631
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    • 2007
  • One of the structural measures for the peak flow reduction is infiltration facilities. There are many types in infiltration facilities - infiltration basin, trench, bed, porous pavement, percolated subdrain, dry well. In this study runoff reduction effect of infiltration trench is analyzed by WinSLAMM. Runoff reduction effect is investigated by each design rainfall and temporal pattern of rainfall particularly. The biggest reduction is shown in Yen and Chow's temporal pattern of design rainfall and the smallest reduction is shown in Huff's first quartile pattern. Runoff reduction rate is presented about 6 to 14 percentage, and the larger return period, the smaller runoff reduction rate.

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도시유역 저류지 위치에 따른 우수유출저감효과 분석 (Analysis of Rainfall Runoff Reduction Effect Depending upon the Location of Detention Pond in Urban Area)

  • 이재준;김호년
    • 대한토목학회논문집
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    • 제28권5B호
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    • pp.535-546
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    • 2008
  • 도시화는 유출량의 증가와 도달시간의 감소에 영향을 미치고 있으며, 이는 하류 지점의 빈번한 범람을 야기시키고 있다. 따라서 유역내에 침투시설과 저류시설 등 유출저감효과를 기대할 수 있는 여러 가지 시설을 이용하여 유출량을 저감시킬 수 있는 각종 규모의 지체저류시설을 활용하게 되었다. 본 연구에서는 세가지의 형태(세장형(SF=0.204), 집중형(SF=0.782), 중간형(SF=0.567))로 유역을 가정하여 일반적으로 유역 말단에 설치하던 유수지(저류지)를 유역내의 임의의 위치에 설치하여 단일저류지와 복수 저류지에 대해 각각 유출저감효과를 분석하고, 이들 저류지의 위치관련변수와 수문학적으로 분석하였다. 단일 저류지의 위치에 따른 유출저감효과를 분석하기 위해 유역의 형상에 따라 저류지의 위치는 전체 유역면적에 대한 저류지 상류부 면적의 비(이하 저류지 상류부 면적비, DUAR(Dimensionless Upstream Area Ratio)이라 한다)를 20%, 40%, 60%, 80%로 변동시키면서 모의분석을 수행하였으며, 복수 저류지의 위치에 따른 유출저감효과를 분석하기 위해 단일 저류지 분석시 적용한 유역형상 중 중간형 유역을 대상으로 하여 방류구조와 유역의 제반사항은 단일 저류지의 모의시와 동일하게 가정하였고, 저류지가 분담하는 유역의 면적비를 바탕으로 하여 DUAR 60%, 80%, 100%, 120%, 140%의 경우에 대해 분석하였다. 이 때 저류지 바닥면적(Ab)의 크기는 유역면적에 대해 각각 1%와 0.5%를 취하는 경우의 두 가지로 구분지어 모의분석을 실시하였다. 저류지의 위치에 따른 유출저감효과를 분석한 결과 세장형의 유역이 적은 저류량에 대해 유출저감효과가 우수하였으며, 저류지의 위치 관련변수의 관계도 및 관계식을 제시하였고, 이를 시험유역에 적용시켜 검증하였다. 저류지 위치 관련변수의 관계도 및 관계식을 이용하여 단일 저류지와 복수 저류지의 개략적인 위치선정 기준을 제안하였다.

논의 유출특성을 고려한 소유역의 홍수유출변화추정 (Estimating the Variation of Peak Flow Considering the Runoff Characteristics in Paddies From Small Agricultural Watersheds.)

  • 김철겸;박승우;임상준
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1999년도 Proceedings of the 1999 Annual Conference The Korean Society of Agricutural Engineers
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    • pp.525-530
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    • 1999
  • A modified SCS TR-20 model that may be applied to a watershed having rice paddies as a land use type, was formulated and applied to a gauaged watershed. The model was applied to the Balan watershed of 26$\textrm{km}^2$ in size for estimation strorm hydrographs . And the simulation results from the model were also compared with thoses from the SCS model. The results showed that paddy fields play an important role to reduce peak runoff. When fractions of paddies are left to fallow conditions or when rice crop is replaced by other, the peak runoff was found to increase up to 10 to 20 percentg . The reduction rates in peak runoff appear to become greater for heavier storms or higher antecedent moisture conditions.

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